防贴型提花面料

By incorporating W-shaped moisture-wicking blocks and diamond-shaped moisture-wicking rings into jacquard fabrics, and combining the properties of polyester and linen fibers, the problem of poor moisture absorption and breathability in chemical fiber jacquard fabrics has been solved, achieving good breathability and moisture wicking effects, and reducing wear and discomfort.

CN224513744UActive Publication Date: 2026-07-17WUJIAN RUNFENG SILK FINISHING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUJIAN RUNFENG SILK FINISHING CO LTD
Filing Date
2025-07-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Jacquard fabrics made of chemical fibers have poor moisture absorption and breathability, leading to stuffiness and sweat retention, causing discomfort.

Method used

The design incorporates anti-slip jacquard fabric with a W-shaped moisture-wicking block and diamond-shaped moisture-wicking ring structure. Combining the properties of polyester and linen fibers, the fabric enhances moisture wicking and breathability through interlaced weaving and perforated design.

Benefits of technology

It improves the breathability and moisture wicking speed of the fabric, reduces abrasion, keeps the skin dry, and prevents the fabric from sticking to the skin.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224513744U_ABST
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Abstract

本实用新型公开了防贴型提花面料,涉及纺织品技术领域,其技术方案要点是:基层的两侧均阵列设置有若干散湿块,散湿块远离基层的一侧呈连续的凹凸状,散湿块的截面形状呈W字形,沿基层纬向相邻的若干散湿块之间开设有若干透气孔,基层的两侧置有若干散湿环,散湿环与透气孔的截面形状均呈菱形,透气孔位于散湿环内侧,散湿块的厚度大于散湿环的厚度。本实用新型通过若干透气孔提高了基层两侧的空气流通效果,从而获得良好的透气性,加快了散湿速度,涤纶纤维具有较强的耐磨性,散湿块表面的凸起由涤纶纤维形成,从而获得了良好的耐磨性,麻纤维具有优于涤纶纤维更强的吸湿性和散湿性,使得皮肤产生的汗液能及时被面料吸收并快速散湿。
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Claims

1. A non-cling jacquard fabric comprising a base layer (1), characterised in that: Several moisture-dissipating blocks (2) are arranged in an array on both sides of the base layer (1). The side of the moisture-dissipating block (2) away from the base layer (1) is continuously concave and convex. The cross-sectional shape of the moisture-dissipating block (2) is W-shaped. Several air vents (3) are opened between several adjacent moisture-dissipating blocks (2) along the latitudinal direction of the base layer (1). Several moisture-dissipating rings (4) are provided on both sides of the base layer (1). The cross-sectional shape of the moisture-dissipating ring (4) and the air vents (3) are both rhomboid. The air vents (3) are located inside the moisture-dissipating ring (4). The thickness of the moisture-dissipating block (2) is greater than the thickness of the moisture-dissipating ring (4).

2. The anti-cling jacquard fabric according to claim 1, characterized in that: Several moisture-dissipating blocks (2) on both sides of the base layer (1) are staggered along the warp direction of the base layer (1), and several moisture-dissipating rings (4) are arranged in an array along the warp direction of the base layer (1).

3. The anti-cling jacquard fabric according to claim 1, wherein: Several moisture-dissipating rings (4) are arranged opposite to each other on both sides of the base layer (1), and the area enclosed by the moisture-dissipating rings (4) on the base layer (1) is larger than the area of ​​the vent holes (3).

4. The anti-cling jacquard fabric according to claim 1, wherein: The weaving structure of the base layer (1) is set as a warp patterned weave. The yarn used to weave the base layer (1) includes a moisture-wicking yarn (5) and an anti-sticking yarn (6). The moisture-wicking yarn (5) serves as the ground weave yarn of the warp patterned weave. Several of the moisture-wicking yarns (5) and anti-sticking yarns (6) are interlaced and set as a group and serve as the patterned yarn of the warp patterned weave.

5. The anti-cling jacquard fabric according to claim 4, characterized in that: The base layer (1) has several moisture-dissipating blocks (2) arranged on both sides of its warp direction, each formed by a set of patterned yarns. The moisture-dissipating ring (4) is formed by sewing moisture-dissipating yarn (5) onto the base layer (1). The diameter of the anti-sticking yarn (6) is larger than the diameter of the moisture-dissipating yarn (5).